Steady state in a gas of inelastic rough spheres heated by a uniform stochastic force
arXiv:1508.06743 · doi:10.1063/1.4934727
Abstract
We study here the steady state attained in a granular gas of inelastic rough spheres that is subject to a spatially uniform random volume force. The stochastic force has the form of the so-called white noise and acts by adding impulse to the particle translational velocities. We work out an analytical solution of the corresponding velocity distribution function from a Sonine polynomial expansion that displays energy non-equipartition between the translational and rotational modes, translational and rotational kurtoses, and translational-rotational velocity correlations. By comparison with a numerical solution of the Boltzmann kinetic equation (by means of the Direct Simulation Monte Carlo method) we show that our analytical solution provides a good description that is quantitatively very accurate in certain ranges of inelasticity and roughness. We also find three important features that make the forced granular gas steady state very different from the homogeneous cooling state (attained by an unforced granular gas). First, the marginal velocity distributions are always close to a Maxwellian. Second, there is a continuous transition to the purely smooth limit (where the effects of particle rotations are ignored). And third, the angular translational-rotational velocity correlations show a preference for a quasiperpendicular mutual orientation (which is called "lifted-tennis-ball" behavior).
19 one-column pages, 7 figures; v2: A few typos corrected
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- Steady state in a gas of inelastic rough spheres heated by a uniform stochastic force
Cited by in corpus (19)
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- Speedups in nonequilibrium thermal relaxation: Mpemba and related effects
- Steady state in a gas of inelastic rough spheres heated by a uniform stochastic force
- On the emergence of large and complex memory effects in nonequilibrium fluids
- Energy nonequipartition in gas mixtures of inelastic rough hard spheres: The tracer limit
- Non-Newtonian rheology in inertial suspensions of inelastic rough hard spheres under simple shear flow
- Driven and undriven states of multicomponent granular gases of inelastic and rough hard disks or spheres
- Interplay between polydispersity, inelasticity, and roughness in the freely cooling regime of hard-disk granular gases
- Optimal control of uniformly heated granular fluids in linear response
- Energy Production Rates of Multicomponent Granular Gases of Rough Particles. A Unified View of Hard-Disk and Hard-Sphere Systems
- Granular gas of inelastic and rough Maxwell particles
- Intruders in disguise: Mimicry effect in granular gases
- Kinetic Theory and Memory Effects of Homogeneous Inelastic Granular Gases under Nonlinear Drag
- Thermal properties of an impurity immersed in a granular gas of rough hard spheres
- Induced correlations and rupture of molecular chaos by anisotropic dissipative Janus hard disks
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- Mpemba-like effect protocol for granular gases of inelastic and rough hard disks
- Translational and rotational non-Gaussianities in homogeneous freely evolving granular gases